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Differential Effects of High-Dose Gamma Irradiation on the Production of Transforming Growth Factor-Beta in Fresh and Established Human Ovarian Cancer
Authors:Alessandro D. Santin    John C. Hiserodt   Philip J. DiSaia   Sergio Pecorelli  Gale A. Granger  
Affiliation:aDepartment of Molecular Biology and Biochemistry, University of California, Irvine, Irvine, California, 92717;bDivision of Gynecologic Oncology, University of California Irvine Medical Center, Orange, California, 92668;dDivision of Pathology, University of California Irvine Medical Center, Orange, California, 92668;cDivision of Gynecologic Oncology, University of Brescia, Brescia, Italy;eMemorial Cancer Institute, Long Beach, California, 90801
Abstract:Tumor cells from five freshly isolated ovarian tumors and four established human ovarian carcinoma cell lines were analyzed for the production of the immunoinhibitory cytokine transforming growth factor-beta (TGF-β) before and after exposure to gamma irradiation and/or the cytokines TNF-α plus IFN-γ. All fresh tumors secreted high levels of TGF-β when compared to the levels produced by the established ovarian carcinoma cell lines. TGF-β produced by fresh tumors was significantly reduced after high doses of gamma irradiation (10,000 cGy). In contrast with the established cell lines, irradiation significantly increased TGF-β secretion. Exposure of fresh tumor cells to cytokines followed by irradiation caused significant reduction of TGF-β released when compared to the amount released after exposure to cytokines only. However, in the established cell lines, cytokines followed by irradiation again significantly increased TGF-β production. These data indicate that high doses of irradiation in fresh ovarian tumors, unlike established ovarian carcinoma cell lines, can significantly reduce the local production of this potent immunoinhibitory cytokine. This effect could work to further amplify weak immunological responses within the tumor. In addition, these findings indicate major differences between fresh tumor samples and established cell lines and warn against the sole use of continuous cell lines as models for tumors growingin vivo.
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